Literature DB >> 25732850

Human FABP1 T94A variant enhances cholesterol uptake.

Huan Huang1, Avery L McIntosh1, Kerstin K Landrock2, Danilo Landrock2, Stephen M Storey1, Gregory G Martin1, Shipra Gupta3, Barbara P Atshaves3, Ann B Kier2, Friedhelm Schroeder4.   

Abstract

Although expression of the human liver fatty acid binding protein (FABP1) T94A variant alters serum lipoprotein cholesterol levels in human subjects, nothing is known whereby the variant elicits these effects. This issue was addressed by in vitro cholesterol binding assays using purified recombinant wild-type (WT) FABP1 T94T and T94A variant proteins and in cultured primary human hepatocytes expressing the FABP1 T94T (genotyped as TT) or T94A (genotyped as CC) proteins. The human FABP1 T94A variant protein had 3-fold higher cholesterol-binding affinity than the WT FABP1 T94T as shown by NBD-cholesterol fluorescence binding assays and by cholesterol isothermal titration microcalorimetry (ITC) binding assays. CC variant hepatocytes also exhibited 30% higher total FABP1 protein. HDL- and LDL-mediated NBD-cholesterol uptake was faster in CC variant than TT WT human hepatocytes. VLDL-mediated uptake of NBD-cholesterol did not differ between CC and TT human hepatocytes. The increased HDL- and LDL-mediated NBD-cholesterol uptake was not associated with any significant change in mRNA levels of SCARB1, LDLR, CETP, and LCAT encoding the key proteins in lipoprotein cholesterol uptake. Thus, the increased HDL- and LDL-mediated NBD-cholesterol uptake by CC hepatocytes may be associated with higher affinity of T94A protein for cholesterol and/or increased total T94A protein level.
Copyright © 2015 Elsevier B.V. All rights reserved.

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Keywords:  Cholesterol uptake; Hepatocyte; Human FABP1; Lipoprotein

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Year:  2015        PMID: 25732850      PMCID: PMC4408243          DOI: 10.1016/j.bbalip.2015.02.015

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  64 in total

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3.  Impact of SCP-2/SCP-x gene ablation and dietary cholesterol on hepatic lipid accumulation.

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4.  Impact of dietary phytol on lipid metabolism in SCP2/SCPX/L-FABP null mice.

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Review 5.  Fatty Acid Binding Protein-1 (FABP1) and the Human FABP1 T94A Variant: Roles in the Endocannabinoid System and Dyslipidemias.

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